Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Jong Chan Kim

Biographic Data

ID5597560
NAMEJong Chan Kim
GIVEN NAMESJong Chan
FAMILY NAMEKim
SIGNATUREKIM J C
VERIFIEDNo
TOTAL WORKS7
TOTAL CITATIONS19
AUTHOR COUNT7
EDITOR COUNT0
FIRST PUBLICATION YEAR2010
LATEST PUBLICATION YEAR2018
H-INDEX3
  • Provenance of obsidian artifacts from the Wolseongdong Paleolithic site, Korea, and its archaeological implications

    Open Access•Yongjoon Chang, Jong Chan Kim•ARTICLE•Quaternary International•2018

  • Stable Carbon Isotopic Composition in Annual Rings of a Pine Tree ( Pinus Densiflora ) from Yeongwol, Korea: Possible Application to Climate Study

    Open Access•Chi-Hwan Kim, Jang Hoon Lee et al.•ARTICLE•Radiocarbon•2017•References: 16

    Stable carbon isotope ratios were measured on the alpha-cellulose in tree rings of a pine tree ( Pinus densiflora ) from Yeongwol, Korea. We developed an annual-resolution δ 13 C series (1835–1905) by correcting the measured data for changes in δ 13 C of air to minimize non-climatic influences. To investigate the climatic signal in the δ 13 C series, we performed correlation analysis between δ 13 C and the Cheugugi climate data. The Cheugugi prec…

  • A Study on Trapping CO 2 Using Molecular Sieve for 14 C AMS Sample Preparation

    Open Access•Kyumin Choe, Sujin Song et al.•ARTICLE•Radiocarbon•2013•Cited by: 2•References: 7

    At the Seoul National University accelerator mass spectrometry (AMS) laboratory, we are planning to develop an automated sample preparation system for higher throughput of radiocarbon dating. This system will consist of several sections, including a combustion line, CO 2 trap, graphitization system, and so on. We usually collect CO 2 by cryogenic trapping. However, since handling liquid nitrogen is expected to be rather difficult, we are interest…

  • The Early to Late Paleolithic Transition in Korea: A Closer Look

    Open Access•Christopher J Bae, Christopher Bae et al.•ARTICLE•Radiocarbon•2013•Cited by: 6•References: 13

    In Korean Paleolithic archaeology, it is traditionally thought that the Late Paleolithic stone tool industries were in some way derived from the Shuidonggou site in northern China. The latter site has long been considered to be the type site of the eastern Asian Late Paleolithic blade technology. However, recent studies suggest that a number of Korean Late Paleolithic sites probably predate Shuidonggou, some by several thousands of years. Here, w…

  • Reconstructing Human Subsistence Strategies During the Korean Neolithic: Contributions from Zooarchaeology, Geosciences, and Radiocarbon Dating

    Open Access•Kidong Bae, Christopher J Bae et al.•ARTICLE•Radiocarbon•2013•Cited by: 1•References: 21

    The Neolithic in Korea began around 10,000 BP and is the period when many substantial changes appear in the archaeological record. In particular, one of the important changes is from a subsistence strategy that relied primarily on hunted, fished, and collected food packages to a diet that by the beginning of the Bronze Age (∼3500 BP) saw intensive agriculture as the primary form of sustenance. This paper discusses current research on this topic, …

  • The Late Paleolithic-Neolithic Transition in Korea: Current Archaeological and Radiocarbon Perspectives

    Open Access•Christopher J Bae, Jong Chan Kim•ARTICLE•Radiocarbon•2010•Cited by: 7•References: 16

    The application of chronometric dating studies in Korean archaeology has lagged behind similar research in China and Japan. The focus of this article is to provide an update on the accelerator mass spectrometry (AMS) radiocarbon dates derived from Korean Paleolithic and Early Neolithic sites. One of the major highlights from recent AMS 14 C studies in Korea is that blade (and microblade) technologies may have diffused directly from Siberia, rathe…

  • Radiocarbon Dates Documenting the Neolithic-Bronze Age Transition in Korea

    Open Access•Jong Chan Kim, Christopher J Bae•ARTICLE•Radiocarbon•2010•Cited by: 3•References: 4

    We report radiocarbon dates for ∼150 archaeological sites in Korea belonging to the Neolithic-Bronze Age transition period. From the present compilation, we find that the Neolithic-Bronze Age transition in Korea started as early as ∼2300 BC and continued over the course of 800–900 yr with peaks representing population increases occurring 2–3 times. Compared with cases in other regions of the world, the Neolithic-Bronze Age transition in Korea was…

  • The Late Paleolithic-Neolithic Transition in Korea: Current Archaeological and Radiocarbon Perspectives

    Open Access•Christopher J Bae, Jong Chan Kim•ARTICLE•Radiocarbon•2010•Cited by: 7•References: 16

    The application of chronometric dating studies in Korean archaeology has lagged behind similar research in China and Japan. The focus of this article is to provide an update on the accelerator mass spectrometry (AMS) radiocarbon dates derived from Korean Paleolithic and Early Neolithic sites. One of the major highlights from recent AMS 14 C studies in Korea is that blade (and microblade) technologies may have diffused directly from Siberia, rathe…

  • The Early to Late Paleolithic Transition in Korea: A Closer Look

    Open Access•Christopher J Bae, Christopher Bae et al.•ARTICLE•Radiocarbon•2013•Cited by: 6•References: 13

    In Korean Paleolithic archaeology, it is traditionally thought that the Late Paleolithic stone tool industries were in some way derived from the Shuidonggou site in northern China. The latter site has long been considered to be the type site of the eastern Asian Late Paleolithic blade technology. However, recent studies suggest that a number of Korean Late Paleolithic sites probably predate Shuidonggou, some by several thousands of years. Here, w…

  • Radiocarbon Dates Documenting the Neolithic-Bronze Age Transition in Korea

    Open Access•Jong Chan Kim, Christopher J Bae•ARTICLE•Radiocarbon•2010•Cited by: 3•References: 4

    We report radiocarbon dates for ∼150 archaeological sites in Korea belonging to the Neolithic-Bronze Age transition period. From the present compilation, we find that the Neolithic-Bronze Age transition in Korea started as early as ∼2300 BC and continued over the course of 800–900 yr with peaks representing population increases occurring 2–3 times. Compared with cases in other regions of the world, the Neolithic-Bronze Age transition in Korea was…

  • A Study on Trapping CO 2 Using Molecular Sieve for 14 C AMS Sample Preparation

    Open Access•Kyumin Choe, Sujin Song et al.•ARTICLE•Radiocarbon•2013•Cited by: 2•References: 7

    At the Seoul National University accelerator mass spectrometry (AMS) laboratory, we are planning to develop an automated sample preparation system for higher throughput of radiocarbon dating. This system will consist of several sections, including a combustion line, CO 2 trap, graphitization system, and so on. We usually collect CO 2 by cryogenic trapping. However, since handling liquid nitrogen is expected to be rather difficult, we are interest…

  • Reconstructing Human Subsistence Strategies During the Korean Neolithic: Contributions from Zooarchaeology, Geosciences, and Radiocarbon Dating

    Open Access•Kidong Bae, Christopher J Bae et al.•ARTICLE•Radiocarbon•2013•Cited by: 1•References: 21

    The Neolithic in Korea began around 10,000 BP and is the period when many substantial changes appear in the archaeological record. In particular, one of the important changes is from a subsistence strategy that relied primarily on hunted, fished, and collected food packages to a diet that by the beginning of the Bronze Age (∼3500 BP) saw intensive agriculture as the primary form of sustenance. This paper discusses current research on this topic, …

  • The Late Paleolithic-Neolithic Transition in Korea: Current Archaeological and Radiocarbon Perspectives

    Open Access•Christopher J Bae, Jong Chan Kim•ARTICLE•Radiocarbon•2010•Cited by: 7•References: 16

    The application of chronometric dating studies in Korean archaeology has lagged behind similar research in China and Japan. The focus of this article is to provide an update on the accelerator mass spectrometry (AMS) radiocarbon dates derived from Korean Paleolithic and Early Neolithic sites. One of the major highlights from recent AMS 14 C studies in Korea is that blade (and microblade) technologies may have diffused directly from Siberia, rathe…

  • Radiocarbon Dates Documenting the Neolithic-Bronze Age Transition in Korea

    Open Access•Jong Chan Kim, Christopher J Bae•ARTICLE•Radiocarbon•2010•Cited by: 3•References: 4

    We report radiocarbon dates for ∼150 archaeological sites in Korea belonging to the Neolithic-Bronze Age transition period. From the present compilation, we find that the Neolithic-Bronze Age transition in Korea started as early as ∼2300 BC and continued over the course of 800–900 yr with peaks representing population increases occurring 2–3 times. Compared with cases in other regions of the world, the Neolithic-Bronze Age transition in Korea was…

  • A Study on Trapping CO 2 Using Molecular Sieve for 14 C AMS Sample Preparation

    Open Access•Kyumin Choe, Sujin Song et al.•ARTICLE•Radiocarbon•2013•Cited by: 2•References: 7

    At the Seoul National University accelerator mass spectrometry (AMS) laboratory, we are planning to develop an automated sample preparation system for higher throughput of radiocarbon dating. This system will consist of several sections, including a combustion line, CO 2 trap, graphitization system, and so on. We usually collect CO 2 by cryogenic trapping. However, since handling liquid nitrogen is expected to be rather difficult, we are interest…

  • The Early to Late Paleolithic Transition in Korea: A Closer Look

    Open Access•Christopher J Bae, Christopher Bae et al.•ARTICLE•Radiocarbon•2013•Cited by: 6•References: 13

    In Korean Paleolithic archaeology, it is traditionally thought that the Late Paleolithic stone tool industries were in some way derived from the Shuidonggou site in northern China. The latter site has long been considered to be the type site of the eastern Asian Late Paleolithic blade technology. However, recent studies suggest that a number of Korean Late Paleolithic sites probably predate Shuidonggou, some by several thousands of years. Here, w…

  • Reconstructing Human Subsistence Strategies During the Korean Neolithic: Contributions from Zooarchaeology, Geosciences, and Radiocarbon Dating

    Open Access•Kidong Bae, Christopher J Bae et al.•ARTICLE•Radiocarbon•2013•Cited by: 1•References: 21

    The Neolithic in Korea began around 10,000 BP and is the period when many substantial changes appear in the archaeological record. In particular, one of the important changes is from a subsistence strategy that relied primarily on hunted, fished, and collected food packages to a diet that by the beginning of the Bronze Age (∼3500 BP) saw intensive agriculture as the primary form of sustenance. This paper discusses current research on this topic, …

  • Stable Carbon Isotopic Composition in Annual Rings of a Pine Tree ( Pinus Densiflora ) from Yeongwol, Korea: Possible Application to Climate Study

    Open Access•Chi-Hwan Kim, Jang Hoon Lee et al.•ARTICLE•Radiocarbon•2017•References: 16

    Stable carbon isotope ratios were measured on the alpha-cellulose in tree rings of a pine tree ( Pinus densiflora ) from Yeongwol, Korea. We developed an annual-resolution δ 13 C series (1835–1905) by correcting the measured data for changes in δ 13 C of air to minimize non-climatic influences. To investigate the climatic signal in the δ 13 C series, we performed correlation analysis between δ 13 C and the Cheugugi climate data. The Cheugugi prec…

  • Provenance of obsidian artifacts from the Wolseongdong Paleolithic site, Korea, and its archaeological implications

    Open Access•Yongjoon Chang, Jong Chan Kim•ARTICLE•Quaternary International•2018

Archaeology (6 works) · Archaeology and ancient environmental studies (6 works) · Geography (6 works) · Radiocarbon dating (6 works) · Accelerator mass spectrometry (4 works) · Geology (4 works) · Pleistocene-Era Hominins and Archaeology (4 works) · Chemistry (3 works) · Pacific and Southeast Asian Studies (3 works) · Biology (2 works)

Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae